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Viral vectored granulocyte-macrophage colony stimulating factor inhibits vaccine protection in an SIV challenge model: protection correlates with neutralizing antibody

机译:病毒矢量化粒细胞巨噬细胞集落刺激因子抑制疫苗在sIV攻击模型中保护:保护相关因素与中和抗体

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摘要

In a previous vaccine study, we reported significant and apparently sterilizing immunity to high-dose, mucosal, simian immunodeficiency virus (SIV) quasispecies challenge (). The vaccine consisted of vectors based on vesicular stomatitis virus (VSV) expressing simian immunodeficiency virus (SIV) gag and env genes, a boost with propagating replicon particles expressing the same SIV genes, and a second boost with VSV-based vectors. Concurrent with that published study we had a parallel group of macaques given the same doses of vaccine vectors, but in addition, we included a third VSV vector expressing rhesus macaque GM-CSF in the priming immunization only. We report here that addition of the vector expressing GM-CSF did not enhance CD8 T cell or antibody responses to SIV antigens, and almost completely abolished the vaccine protection against high-dose mucosal challenge with SIV. Expression of GM-CSF may have limited vector replication excessively in the macaque model. Our results suggest caution in the use of GM-CSF as a vaccine adjuvant, especially when expressed by a viral vector. Combining vaccine group animals from this study and the previous study we found that there was a marginal but significant positive correlation between the neutralizing antibody to a neutralization resistant SIV Env and protection from infection.
机译:在先前的疫苗研究中,我们向高剂量,粘膜,硅藻免疫缺陷病毒(SIV)Quasispecies挑战()报告了显着且显着灭菌免疫力。该疫苗由基于血管间口炎病毒(VSV)的载体组成,表达Si​​mian免疫缺陷病毒(SIV)GAG和Env基因,促进表达相同的SIV基因的复制子颗粒,以及与基于VSV的载体的第二升压。同时与该发表的研究我们有一个平行的猕猴组给出了相同剂量的疫苗载体,但另外,我们仅包括表达恒河猴猕猴GM-CSF的第三个VSV载体。在此报告,添加表达GM-CSF的载体并未增强CD8 T细胞或对SIV抗原的抗体反应,并且几乎完全废除了与SIV对高剂量粘膜攻击的疫苗保护。 GM-CSF的表达可能在猕猴模型中过度过度载体复制。我们的结果表明在使用GM-CSF作为疫苗佐剂时,特别是当由病毒载体表示时。将疫苗组动物与本研究的组合和先前的研究相结合,我们发现中和抗性SIV ENV和免受感染的中和抗体之间存在边缘但是显着的正相关性。

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